IP Library Granted Patent US 10,832,543
Granted Patent B2
US 10,832,543 · App. 16/246,368 · Granted Nov 10, 2020

Activity sensor

Inventors: Fred Cheng (Los Altos Hills, CA); Herman Yau (Sunnyvale, CA)
Assignee: The Chamberlain Group, Inc.
G08B13/19695G08B13/19G08B13/19684G08B27/005
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Quick Facts
Patent No.
US 10,832,543
App. No.
16/246,368
Granted
Nov 10, 2020
Kind
B2
Abstract

An activity sensor system includes a library that stores image information. A low power artificial intelligence based image sensor captures images from a first location at a first image resolution. The sensor has access to the library that stores image information. The sensor is able to recognize images based on the image information in the image library.

Claims (56)

1. An activity sensor system, comprising:

a library that stores image information;

a first sensor that captures images from a first location at a first image resolution, the first sensor having access to the library that stores image information, the first sensor being able to recognize images based on the image information in the library;

a second sensor that captures images from the first location at a second image resolution, where the second image resolution is higher than the first image resolution;

a power management block that controls power to the second sensor; and

a controller that manages the power management block;

wherein in a sleep mode, the first sensor captures images, but the second sensor does not capture images; and

wherein when in the sleep mode, the first sensor detects a predetermined image, the power management block supplies power to awaken the second sensor so that the second sensor captures images from the first location and is no longer in the sleep mode.

2. The activity sensor system as in claim 1 , additionally comprising:

a wireless channel connected to the controller through which a user can select a mode of operation for the activity sensor system and can select the predetermined image.

3. The activity sensor system as in claim 1 , additionally comprising:

a first wireless channel connected to the activity sensor system through which the images captured by the second sensor can be sent to a user; and

a second wireless channel connected to the controller through which a user can select a mode of operation for the activity sensor system and can select the predetermined image.

4. The activity sensor system as in claim 1 , additionally comprising:

a first wireless channel connected to the activity sensor system through which the images captured by the second sensor and the images captured by the first sensor can be sent to a user; and

a second wireless channel connected to the controller through which a user can select a mode of operation for the activity sensor system and can select the predetermined image.

5. The activity sensor system as in claim 1 , additionally comprising:

a first wireless channel connected to the activity sensor system through which the images captured by the second sensor can be sent to a device external to the activity sensor system; and

a second wireless channel connected to the controller through which a user can select the device to which the images captured by the second sensor are sent.

6. An activity sensor system, comprising:

a library that stores image information;

a low power artificial intelligence based image sensor that captures images from a first location at a first image resolution, the low power artificial intelligence based image sensor having access to the library that stores image information, the low power artificial intelligence based image sensor being able to recognize images based on the image information in the library, the low power artificial intelligence based image sensor including a pixel array that consumes less than seven microwatts of power;

a power management block that controls power to the low power artificial intelligence based image sensor; and

a controller that manages the power management block;

wherein when the low power artificial intelligence based image sensor detects a predetermined image, the activity sensor system notifies a user.

7. The activity sensor system as in claim 6 , additionally comprising:

a wireless channel connected to the controller through which a user can select a mode of operation for the activity sensor system and can select the predetermined image.

8. The activity sensor system as in claim 6 , additionally comprising:

a first wireless channel connected to the activity sensor system through which the images captured by the low power artificial intelligence based image sensor can be sent to a user; and

a second wireless channel connected to the controller through which a user can select a mode of operation for the activity sensor system and can select the predetermined image.

9. The activity sensor system as in claim 6 , additionally comprising:

a first wireless channel connected to the activity sensor system through which the images captured by the low power artificial intelligence based image sensor can be sent to a device external to the activity sensor system; and

a second wireless channel connected to the controller through which a user can select the device to which the images captured by the low power artificial intelligence based image sensor are sent.

10. The activity sensor system as in claim 6 , additionally comprising:

a passive infrared detector;

wherein in a sleep mode, the low power artificial intelligence based image sensor does not capture images; and

wherein when in the sleep mode, the passive infrared detector detects motion, the power management block supplies power to awaken the low power artificial intelligence based image sensor so that the low power artificial intelligence based image sensor captures images from the first location and is no longer in the sleep mode.

11. An activity sensor system, comprising:

a library that stores image information;

a first sensor that captures images from a first location at a first image resolution, the first sensor having access to the library that stores image information, the first sensor being able to recognize images based on the image information in the library;

a second sensor that captures images from the first location at a second image resolution, where the second image resolution is higher than the first image resolution;

a power management block that controls power to the second sensor; and

a controller that manages the power management block;

wherein in a sleep mode, the first sensor captures images, but the second sensor does not capture images; and

wherein when in the sleep mode, the first sensor detects motion, the power management block supplies power to awaken the second sensor so that the second sensor captures images from the first location and is no longer in the sleep mode.

12. The activity sensor system as in claim 11 , additionally comprising:

a wireless channel connected to the controller through which a user can select a mode of operation for the activity sensor system.

13. The activity sensor system as in claim 11 , additionally comprising:

a first wireless channel connected to the activity sensor system through which the images captured by the second sensor can be sent to a user; and

a second wireless channel connected to the controller through which a user can select a mode of operation for the activity sensor system.

14. The activity sensor system as in claim 11 , additionally comprising:

a first wireless channel connected to the activity sensor system through which the images captured by the second sensor and the images captured by the first sensor can be sent to a user; and

a second wireless channel connected to the controller through which a user can select a mode of operation for the activity sensor system.

15. The activity sensor system as in claim 11 , additionally comprising:

a first wireless channel connected to the activity sensor system through which the images captured by the second sensor can be sent to a device external to the activity sensor system; and

a second wireless channel connected to the controller through which a user can select the device to which the images captured by the second sensor are sent.

Assignments (6)
NOTICE OF TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS Recorded Jan 26, 2024
From: ARES CAPITAL CORPORATION, AS COLLATERAL AGENT
To: THE CHAMBERLAIN GROUP LLC; SYSTEMS, LLC
Reel/Frame 066374/0749 →
CONVERSION Recorded Apr 22, 2022
From: THE CHAMBERLAIN GROUP, INC.
To: THE CHAMBERLAIN GROUP LLC
Reel/Frame 060379/0207 →
CONVERSION Recorded Jan 14, 2022
From: THE CHAMBERLAIN GROUP, INC.
To: THE CHAMBLERLAIN GROUP LLC
Reel/Frame 058738/0305 →
FIRST LIEN PATENT SECURITY AGREEMENT Recorded Nov 3, 2021
From: THE CHAMBERLAIN GROUP LLC; SYSTEMS, LLC
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 058014/0931 →
SECOND LIEN PATENT SECURITY AGREEMENT Recorded Nov 3, 2021
From: THE CHAMBERLAIN GROUP LLC; SYSTEMS, LLC
To: ARES CAPITAL CORPORATION, AS COLLATERAL AGENT
Reel/Frame 058015/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 2, 2019
From: CHENG, FRED; YAU, HERMAN
To: THE CHAMBERLAIN GROUP, INC.
Reel/Frame 049656/0121 →